Trombly R, Tappel A
Lipids. 1975 Aug;10(8):441-7. doi: 10.1007/BF02532426.
The fluorescence excitation spectrum of model conjugated Schiff base compounds that arise from the reaction of malonaldehyde with amino acids was shown to contain a maximum at 260-280 nm in addition to the previously observed maximum at 350-390 nm. Excitation at either maximum results in emission at a single maximum at 440-480 nm. The excitation and emission maxima of the model fluorescent compounds, together with the characteristic reductions in fluorescence intensity caused by alkaline pH or heavy metal coordination provide criteria with which to examine lipid peroxidation products for the presence of the conjugated Schiff base fluorophore. Silicic acid column chromatography and silica gel thin layer chromatography were employed to fractionate the fluorescent products of model lipid peroxidation systems and of rat testicular lipid soluble extracts. These products contained large families of compounds whose fluorescence characteristics were the same as those of the Schiff base fluorophores. The fractionation methods used enabled more thorough fluorescence characterization of many of the products of lipid peroxication, but the fluorescence criteria available do not provide definitive proof of structure.
丙二醛与氨基酸反应生成的模型共轭席夫碱化合物的荧光激发光谱显示,除了先前观察到的在350 - 390 nm处的最大值外,在260 - 280 nm处还有一个最大值。在这两个最大值处进行激发都会在440 - 480 nm处的单一最大值处产生发射。模型荧光化合物的激发和发射最大值,以及由碱性pH值或重金属配位引起的荧光强度的特征性降低,为检测脂质过氧化产物中是否存在共轭席夫碱荧光团提供了标准。采用硅酸柱色谱法和硅胶薄层色谱法对模型脂质过氧化体系和大鼠睾丸脂质可溶性提取物的荧光产物进行分离。这些产物包含大量化合物家族,其荧光特性与席夫碱荧光团相同。所使用的分离方法能够对脂质过氧化的许多产物进行更全面的荧光表征,但现有的荧光标准并不能提供结构的确切证据。